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用于化学栓塞的载顺铂聚(d,l-丙交酯)微球的制备与表征

Formation and characterization of cisplatin loaded poly(d,l-lactide) microspheres for chemoembolization.

作者信息

Spenlehauer G, Veillard M, Benoît J P

出版信息

J Pharm Sci. 1986 Aug;75(8):750-5. doi: 10.1002/jps.2600750805.

Abstract

Cisplatin, a slightly water soluble anticancer drug, has been incorporated into biodegradable poly(d,l-lactide) microspheres using the solvent evaporation process. The optimal experimental conditions to produce spherical and separate drug-loaded particles (45% cisplatin) were as follows: the dispersing phase was a mixture of 0.05% methylcellulose and 4% polyvinyl alcohol (8 mPa-s grade); and the optimal poly(d,l-lactide) concentration in the organic phase was found to be greater than or equal to 7.16%. Microscopic studies showed that increasing the drug content in the microspheres produced the appearance of rod-like crystals at the microparticle surface. In addition, the cisplatin crystals were found homogeneously distributed in the polymer matrix, even at a high drug content. Increased viscosities of the organic phase enhanced the mean microsphere size, while increasing the emulsifier concentration in the aqueous phase decreased the average particle size. The drug incorporation efficiency was markedly improved after saturation of the dispersing phase with cisplatin. It was also noted that the amount of drug incorporated increased with increasing mean microsphere diameter. The methylene chloride content entrapped within the microspheres was found to depend upon the microsphere size distribution and the cisplatin content. An increase of the microsphere system porosity, by the addition of 10% cyclohexane in the organic phase, caused a reduction in the residual methylene chloride content. Finally, the in vitro release kinetics of cisplatin were influenced by the drug loading.

摘要

顺铂是一种微溶于水的抗癌药物,已通过溶剂蒸发法被载入可生物降解的聚(d,l-丙交酯)微球中。制备球形且分散的载药颗粒(含45%顺铂)的最佳实验条件如下:分散相为0.05%甲基纤维素和4%聚乙烯醇(8毫帕·秒级)的混合物;有机相中聚(d,l-丙交酯)的最佳浓度为大于或等于7.16%。显微镜研究表明,微球中药物含量增加会导致微粒表面出现棒状晶体。此外,即使在高药物含量下,也发现顺铂晶体均匀分布在聚合物基质中。有机相粘度增加会增大微球平均尺寸,而水相中乳化剂浓度增加会降低平均粒径。用顺铂使分散相饱和后,药物载入效率显著提高。还注意到,载入的药量随微球平均直径增大而增加。发现微球中截留的二氯甲烷含量取决于微球尺寸分布和顺铂含量。通过在有机相中添加10%环己烷来增加微球系统孔隙率,会使残留二氯甲烷含量降低。最后,顺铂的体外释放动力学受载药量影响。

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